refraction time minimization and snell s law

In the previous simulation, we looked at how light travels in such a way as to minimize the travel time. In this simulation, we look at the connection between the minimization of the travel time and S
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refraction time minimization and snell s law Description

In the previous simulation, we looked at how light travels in such a way as to minimize the travel time. In this simulation, we look at the connection between the minimization of the travel time and Snell's Law. Snell's Law, by the way, states that light, when it passes from one medium to another, obeys the relationship: n1 sin(θ1) = n2 sin(θ2) n1 is the index of refraction of medium 1, n2 is the index of refraction of medium 2, θ1 is the angle, in medium 1, the light ray makes with the normal, θ2 is the angle, in medium 2, the light ray makes with the normal. The normal is the line perpendicular to the interface that passes through the interface at the same location the light does. In this simulation, the normal is a vertical line.


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